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首页> 外文期刊>Journal of Hydrology >GOFOS, ground optical fog observation system for monitoring the vertical stratocumulus-fog cloud distribution in the coast of the Atacama Desert, Chile
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GOFOS, ground optical fog observation system for monitoring the vertical stratocumulus-fog cloud distribution in the coast of the Atacama Desert, Chile

机译:GOFOS,地面光学雾观测系统监测智利海岸海岸垂直纹状岩云分布

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Studying fog requires a good understanding of both its horizontal and vertical distributions. Among these two, the vertical one is the most challenging to observe. Different methods have been adopted for observing this variable, among which the most commonly used are satellite datasets, together with airborne and meteorological surface observations. Yet, all these techniques present significant limitations as for spatial and temporal resolution when describing the vertical fog structure. In this manuscript, we introduce the Ground Optical Fog Observation System (GOFOS), a new method to describe the advective fog's frequency and vertical distribution. This tool is based on in-situ optical observations, taking advantage of the topography of the Atacama Desert coastal mountains, where advective fog is frequent. During 2017, the GOFOS reported a fog presence <10% during summer and of similar to 50% during winter. Also, the GOFOS shows a diurnal variability of fog presence that decreases around noon and increases again starting from the afternoon. The vertical structure observed by the GOFOS shows a cloud depth of similar to 250 m, subject to diurnal and seasonal variabilities. By analyzing GOFOS results through a comparison with the ones obtained by standard observations, a similar to 93% agreement was found between the fog frequencies detected by the GOFOS and GOES. Also, we found a similar to 80% consistency between GOFOS fog frequency values and marine boundary layer regimes related to fog formation. Moreover, we observed that the cloud base height estimated by the GOFOS is correlated with the Iquique Airport ceilometer measurements (r = +0.6). Finally, the mean cloud top height estimated by the GOFOS differs by 8% from the Antofagasta Airport radio-soundings measurements. These results provide useful information for the selection of optimal sites for fog harvesting and for getting a better understanding of the interactions between fog and its ecosystem. In conclusion, through this study the GOFOS demonstrated its potential as a simple, reliable, and affordable method for systematic fog monitoring that might also be adapted to different topographic conditions.
机译:研究雾需要很好地理解其水平和垂直分布。在这两种情况中,垂直方向最难观察。观测这一变量采用了不同的方法,其中最常用的是卫星数据集,以及航空和气象地面观测。然而,在描述垂直雾结构时,所有这些技术在空间和时间分辨率方面都存在很大的局限性。在本文中,我们介绍了地面光学雾观测系统(GOFOS),一种描述平流雾频率和垂直分布的新方法。该工具基于现场光学观测,利用阿塔卡马沙漠海岸山脉的地形,那里经常出现平流雾。2017年期间,GOFOS报告夏季雾出现率<10%,冬季雾出现率接近50%。此外,GOFOS显示出雾存在的日变化性,在中午前后减少,从下午开始再次增加。GOFOS观测到的垂直结构显示,云层深度接近250米,受日变化和季节变化的影响。通过将GOFOS结果与标准观测结果进行比较分析,发现GOFOS检测到的雾频率与GOES之间的一致性接近93%。此外,我们发现GOFOS雾频率值和与雾形成相关的海洋边界层状态之间的一致性接近80%。此外,我们还观察到,GOFOS估算的云底高度与伊基克机场云高计测量值相关(r=+0.6)。最后,GOFOS估算的平均云顶高度与安托法加斯塔机场无线电探测测量值相差8%。这些结果为选择最佳捕雾地点以及更好地了解雾与其生态系统之间的相互作用提供了有用的信息。总之,通过这项研究,GOFOS展示了其作为一种简单、可靠且价格合理的系统雾霾监测方法的潜力,该方法也可能适用于不同的地形条件。

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